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Spectrum handoff decision algorithm with dynamic weights in cognitive radio networks

机译:认知无线电网络中具有动态权重的频谱切换决策算法

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While primary users (PU) arrive in cognitive radio networks, the current spectrum handoff scheme is that secondary users (SU) have to vacate the spectrum bands which is used and move to other available spectrum bands. This brings frequent spectrum handoffs and degrades the performance of SU even results in service interrupt. Actually SU can still continue to transmit (Underlay) as long as the interference at PU does not exceed a certain threshold. However, the coverage of Underlay is restricted. To overcome aforementioned problem, it is proposed a multi-cell spectrum handoff scheme as a supplement on the coverage of Underlay. Simple additive weights decision algorithm with dynamic weights (SAW-DW) in spectrum handoff is used to select optimal target cell for SU to avoid service interrupt when SU exceeds Underlay constraint. Theoretical analysis and simulation results show that the scheme and algorithm can reduce the probability of handoff failure and service interrupt of SU and improve quality of service.
机译:当主要用户(PU)到达认知无线电网络时,当前的频谱切换方案是次要用户(SU)必须腾出已使用的频段并转移到其他可用的频段。这带来了频繁的频谱切换,并降低了SU的性能,甚至导致服务中断。实际上,只要PU处的干扰不超过特定阈值,SU仍可以继续发送(Underlay)。但是,Underlay的覆盖范围受到限制。为了克服上述问题,提出了一种多小区频谱切换方案,作为对Underlay的覆盖范围的补充。频谱切换中具有动态权重(SAW-DW)的简单加性权重决策算法用于为SU选择最佳目标小区,以避免SU超过Underlay约束时服务中断。理论分析和仿真结果表明,该方案和算法可以降低SU的切换失败和服务中断的可能性,并提高服务质量。

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